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related field. Knowledge: Surface/contact potential, dielectric and polarization measurements, thin-film physics and data analysis. Essential research profile: Applications will be considered only from
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awarded one of the prestigious ERC Synergy Grants in collaboration with three other research institutions across Europe and has strong collaborative links and projects with the Center for Nanotechnology in
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, and École Polytechnique Fédérale de Lausanne. The Nanomedicine Lab also has strong collaborative links and projects with the Center for Nanotechnology in Medicine at the Faculty of Biology, Medicine and
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, and École Polytechnique Fédérale de Lausanne. The Nanomedicine Lab also has strong collaborative links and projects with the Center for Nanotechnology in Medicine at the Faculty of Biology, Medicine and
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collaborators. The Nanomedicine Lab also has strong collaborative links and projects with the Center for Nanotechnology in Medicine at the Faculty of Biology, Medicine and Health of The University of Manchester
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beyond conventional binary "bits" toward multi-level and analog memory systems that enable richer information encoding. A major thrust of the group is the development of in-memory and physical computing
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combine scalable and environmentally benign synthetic routes with advanced structural and compositional characterisation to establish clear links between synthesis parameters, nanostructure, and functional
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in altermagnets to encode and process information. The project involves close collaboration with experimental and theoretical partners, including large-scale synchrotron facilities. The work will be
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control, proximity engineering and quantum transport. Analysis and interpretation of experimental data. Presentation of results at international conferences and preparation of scientific publications
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Synchrotron developing correlative (S)TEM in-situ experiments on catalysts, from SACs to multiple types of nanostructures. This position is linked to the AMADE PID2023 project funded by AEI / MCIN, led by Prof